AbstractA lab-scale thermochemical reactor is designed and fabricated for the solar-driven thermal reduction of non-volatile manganese oxide to produce hydrogen by water splitting thermo chemical cycles. A time dependent three dimensional numerical model is developed to investigate the performance of the reactor since the chemical kinetics strongly depends on irradiance, temperature and fluid flow distribution around the reactant. Radiation heat transfer is calculated by using surface-to-surface (S2S) radiation model. Thermo-fluid flow, absorption efficiency and the temperature distribution of the sample are predicted as a function of time and the model is validated by experimental measurements
A basic concept for a receiver-reactor for solar sulfuric acid decomposition as the key step of ther...
The transient thermal behavior of two solar receiver-reactors for hydrogen production has been model...
The transient thermal behavior of two solar receiver-reactors for hydrogen production has been model...
AbstractA lab-scale thermochemical reactor is designed and fabricated for the solar-driven thermal r...
Solar reactors are devices that collect concentrated solar energy from systems such as the solar fur...
Solar reactors are devices that collect concentrated solar energy from systems such as the solar fur...
AbstractThermal reduction of metal oxides is of primary interest within the R&D field of solar drive...
AbstractThe optimum design of a thermochemical reactor involves complex phenomena such as radiation ...
A transient three-dimensional heat transfer model is developed for a 3 kWth solar thermochemical rea...
The reduction of iron–manganese oxide particles in a high-temperature packed-bed solar thermochemica...
AbstractThe endothermic thermochemical process of metal oxide reduction in an indirectly-irradiated ...
Solar reactors are devices that collect concentrated solar energy from systems such as the solar fur...
Solar reactors are devices that collect concentrated solar energy from systems such as the solar fur...
Solar thermochemical processes utilize inexhaustible solar energy as a thermal driving force to prov...
AbstractA solar thermo-chemical reactor is modeled and analyzed for the solar thermal dissociation o...
A basic concept for a receiver-reactor for solar sulfuric acid decomposition as the key step of ther...
The transient thermal behavior of two solar receiver-reactors for hydrogen production has been model...
The transient thermal behavior of two solar receiver-reactors for hydrogen production has been model...
AbstractA lab-scale thermochemical reactor is designed and fabricated for the solar-driven thermal r...
Solar reactors are devices that collect concentrated solar energy from systems such as the solar fur...
Solar reactors are devices that collect concentrated solar energy from systems such as the solar fur...
AbstractThermal reduction of metal oxides is of primary interest within the R&D field of solar drive...
AbstractThe optimum design of a thermochemical reactor involves complex phenomena such as radiation ...
A transient three-dimensional heat transfer model is developed for a 3 kWth solar thermochemical rea...
The reduction of iron–manganese oxide particles in a high-temperature packed-bed solar thermochemica...
AbstractThe endothermic thermochemical process of metal oxide reduction in an indirectly-irradiated ...
Solar reactors are devices that collect concentrated solar energy from systems such as the solar fur...
Solar reactors are devices that collect concentrated solar energy from systems such as the solar fur...
Solar thermochemical processes utilize inexhaustible solar energy as a thermal driving force to prov...
AbstractA solar thermo-chemical reactor is modeled and analyzed for the solar thermal dissociation o...
A basic concept for a receiver-reactor for solar sulfuric acid decomposition as the key step of ther...
The transient thermal behavior of two solar receiver-reactors for hydrogen production has been model...
The transient thermal behavior of two solar receiver-reactors for hydrogen production has been model...